Visualization of xylem embolism by X-ray microtomography: a direct test against hydraulic measurements

Title
Visualization of xylem embolism by X-ray microtomography: a direct test against hydraulic measurements
Publication Date
2017-04
Author(s)
Nolf, Markus
Lopez, Rosana
Peters, Jennifer M R
Flavel, Richard J
( author )
OrcID: https://orcid.org/0000-0001-7867-2104
Email: rflavel3@une.edu.au
UNE Id une-id:rflavel3
Koloadin, Leah S
Young, Iain M
Choat, Brendan
Type of document
Journal Article
Language
en
Entity Type
Publication
Publisher
Wiley-Blackwell Publishing Ltd
Place of publication
United Kingdom
DOI
10.1111/nph.14462
UNE publication id
une:1959.11/26897
Abstract
X-ray microtomography (microCT) is becoming a valuable noninvasive tool for advancing our understanding of plant-water relations. Laboratory-based microCT systems are becoming more affordable and provide better access than synchrotron facilities. However, some systems come at the cost of comparably lower signal quality and spatial resolution than synchrotron facilities. In this study, we evaluated laboratory-based X-ray microCT imaging as a tool to nondestructively analyse hydraulic vulnerability to drought-induced embolism in a woody plant species. We analysed the vulnerability to drought-induced embolism of benchtop-dehydrated Eucalyptus camaldulensis plants using microCT and hydraulic flow measurements on the same sample material, allowing us to directly compare the two methods. Additionally, we developed a quantitative procedure to improve microCT image analysis at limited resolution and accurately measure vessel lumens. Hydraulic measurements matched closely with microCT imaging of the current-year growth ring, with similar hydraulic conductivity and loss of conductivity due to xylem embolism. Optimized thresholding of vessel lumens during image analysis, based on a physiologically meaningful parameter (theoretical conductivity), allowed us to overcome common potential constraints of some lab-based systems. Our results indicate that estimates of vulnerability to embolism provided by microCT visualization agree well with those obtained from hydraulic measurements on the same sample material.
Link
Citation
New Phytologist, 214(2), p. 890-898
ISSN
1469-8137
0028-646X
Pubmed ID
28195328
Start page
890
End page
898

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